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Bascules et oscillateurs de relaxation Correction de l’exercice 3: In this program, I lecture semiconductor lasers and experimental lab activities.

Optics and Photonics This module is an introduction to optics. Maxwell-Bloch Equations Homework 4: Semiconductor Lasers Homework 3: Micro and Nano-Physics This course gives the basics in quantum and statistical physics as well as an overview of semiconductor physics: Principle of quantum mechanics, electrons in crystals, conductors, insulator, and semiconductors, PN junction, principle of MOS structure.


Course Objectives Lesson 1: From the second year, the Communication Devices and Systems Socom track in which I am transitor brings a global and exhaustive understanding of the physical layer of communication networks both from a theoretical and experimental point of view. Merci de me les communiquer par simple retour courriel.

M2 Optical Networks and Photonic Systems This module gives vertical knowledge on optical communications: Over the past few decades, optics, which ecercice until now has remained a traditional discipline, has become strongly linked to information and transistot technologies: Propagation of light in optical fibres, resonators and thermal radiation; Introduction to lasers: Advanced Measurements in Semiconductor Lasers Lesson 4: During the 3rd year, students can also follow one of the very selective Master of Science programs M2 proposed elsewhere within the UPSay.

Laser Bifurcations Homework 2: M2 Nanosciences Within the Nanodevice and Nanotechnology track, both a conceptual and technological approach is proposed not only in engineering sciences Physics, Communication Technologies, Chemistry, Materialsbut also in Biosciences and Biotechnologies.


Basics of Semiconductor Lasers Lesson 2: I also focuse on dynamic effects in semiconductor lasers, nonlinear photonics features, as well as experimental lab works. Optical Communications This gipolaire unit introduces the components and functions of an optical system, through the emblematic example of a very high rate optical communication.

In this program, I review novel integrated photonic architectures as well as the key-technologies for optical sources and ultrafast optoelectronics like quantum dot semiconductors, quantum cascade lasers, nanolasers, silicon lasers, etc.

In this program, I teach nonlinear waves, propagation in dispersive media, and semiconductor lasers.

This teaching unit covers the functions and associated components for the transmission lasersamplification modulation, photo reception, multiplexing and the properties of optical channels optical fibres: